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Your search keyword '"Mechanosensation"' showing total 24 results

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24 results on '"Mechanosensation"'

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1. Shear Stress-Induced AMP-Activated Protein Kinase Modulation in Endothelial Cells: Its Role in Metabolic Adaptions and Cardiovascular Disease.

2. Shear Stress-Induced AMP-Activated Protein Kinase Modulation in Endothelial Cells: Its Role in Metabolic Adaptions and Cardiovascular Disease

3. Physiological and Pathological Significance of Esophageal TRP Channels: Special Focus on TRPV4 in Esophageal Epithelial Cells.

4. Acid-Sensing Ion Channels and Mechanosensation

5. Mechanosensation and Mechanotransduction by Lymphatic Endothelial Cells Act as Important Regulators of Lymphatic Development and Function

6. The Agonist Action of Alkylphenols on TRPA1 Relates to Their Effects on Membrane Lipid Order: Implications for TRPA1-Mediated Chemosensation

7. Primary Cilia and Calcium Signaling Interactions

8. TRP Channels as Sensors of Chemically-Induced Changes in Cell Membrane Mechanical Properties

9. Negative Influence by the Force: Mechanically Induced Hyperpolarization via K2P Background Potassium Channels

10. Acid-Sensing Ion Channels and Mechanosensation

11. Hemodynamic Forces Regulate Cardiac Regeneration-Responsive Enhancer Activity during Ventricle Regeneration

12. Mechanosensation and Mechanotransduction by Lymphatic Endothelial Cells Act as Important Regulators of Lymphatic Development and Function

13. The Agonist Action of Alkylphenols on TRPA1 Relates to Their Effects on Membrane Lipid Order: Implications for TRPA1-Mediated Chemosensation

14. Cell-Based Mechanosensation, Epigenetics, and Non-Coding RNAs in Progression of Cardiac Fibrosis

15. The pivotal role of TRP channels in homeostasis and diseases throughout the gastrointestinal tract

16. TRP Channels as Sensors of Chemically-Induced Changes in Cell Membrane Mechanical Properties

17. Enhanced Shear Force Responsiveness of Epithelial Na+ Channel’s (ENaC) δ Subunit Following the Insertion of N-Glycosylation Motifs Relies on the Extracellular Matrix

18. Acid-Sensing Ion Channels and Mechanosensation.

19. Mechanosensation and Mechanotransduction by Lymphatic Endothelial Cells Act as Important Regulators of Lymphatic Development and Function.

20. The Agonist Action of Alkylphenols on TRPA1 Relates to Their Effects on Membrane Lipid Order: Implications for TRPA1-Mediated Chemosensation.

21. Taste the Pain: The Role of TRP Channels in Pain and Taste Perception

22. Primary Cilia and Calcium Signaling Interactions.

23. Altered Mitochondrial Metabolism and Mechanosensation in the Failing Heart: Focus on Intracellular Calcium Signaling

24. TRP Channels as Sensors of Chemically-Induced Changes in Cell Membrane Mechanical Properties.

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